Animal Genomics Laboratory, Animal Biotechnology Centre, National Dairy Research Institute, Karnal, India.
Theriogenelogy Laboratory, SRS of National Dairy Research Institute, Bengaluru, India.
Sci Rep. 2023 Oct 4;13(1):16703. doi: 10.1038/s41598-023-43530-y.
In pregnant animals, communication between the mother and conceptus occurs via extracellular vesicles (EVs) that carry several biomolecules such as nucleic acids (miRNAs, mRNAs), proteins, and lipids. At the time of implantation, the endometrium undergoes several morphological and physiological changes, such as angiogenesis, apoptosis, and cell proliferation regulation at the implantation site, to attain a receptive state. This study was conducted to detect pregnancy-specific miRNAs derived from extracellular vesicles in the systemic circulation of Bubalus bubalis (water buffalo) and to assess their functional significance in the modulation of endometrial primary cells. The extracellular vesicles were isolated from the blood plasma using a precipitation-based method and further characterized by various methods such as Differential light scattering, Nanoparticle tracking assay, Western blot, and transmission electron microscopy. The relative expression of the selected extracellular vesicles associated miRNAs (EV-miRNA) at different intervals (days 15, 19, 25, and 30) post artificial insemination (AI) was analyzed using RT-qPCR, and expression of miR-195-5p was found to be significantly higher (P < 0.01) in pregnant animals on day 19 post AI (implantation window) as compared to day 15 post AI. The elevated expression might indicate the involvement of this miRNA in the maternal-conceptus cross-talk occurring during the implantation period. The KEGG pathway enrichment and Gene Ontology analyses of the miR-195-5p target genes revealed that these were mostly involved in the PI3-Akt, MAPK, cell cycle, ubiquitin-mediated proteolysis, and mTOR signaling pathways, which are related to the regulation of cell proliferation. Transfecting the in vitro cultured cells with miR-195-5p mimic significantly suppressed (P < 0.05) the expression of its target genes such as YWHAQ, CDC27, AKT-3, FGF-7, MAPK8, SGK1, VEGFA, CACAND1, CUL2, MKNK1, and CACAN2D1. Furthermore, the downregulation of the miR-195-5p target genes was positively correlated with a significant increase in the apoptotic rate and a decrease in the proliferation. In conclusion, the current findings provide vital information on the presence of EV miR-195-5p in maternal circulation during the implantation window indicating its important role in the modulation of buffalo endometrium epithelial cells via promoting cell death. Altogether, the milieu of miR-195-5p may serve as a novel and potential molecular factor facilitating the implantation of the early embryo during the establishment of pregnancy in buffaloes. Thus, miR-195-5p may be identified as a unique circulatory EV biomarker related to establishing pregnancy in buffaloes as early as day 19 post-AI.
在怀孕的动物中,母体与胚胎之间通过细胞外囊泡 (EVs) 进行通讯,这些囊泡携带多种生物分子,如核酸 (miRNAs、mRNAs)、蛋白质和脂质。在着床时,子宫内膜经历了几个形态和生理变化,如血管生成、细胞凋亡和细胞增殖的调节,以达到接受状态。本研究旨在检测水牛(Bubalus bubalis)系统循环中来自细胞外囊泡的妊娠特异性 miRNAs,并评估它们在调节子宫内膜原代细胞中的功能意义。使用基于沉淀的方法从血浆中分离细胞外囊泡,并通过差示光散射、纳米颗粒跟踪分析、Western blot 和透射电子显微镜等多种方法进一步表征。使用 RT-qPCR 分析了不同间隔(人工授精后 15、19、25 和 30 天)后选定的与细胞外囊泡相关的 miRNAs (EV-miRNA) 的相对表达,发现与人工授精后 15 天(着床窗口)相比,妊娠动物在人工授精后 19 天(着床窗口)时 miR-195-5p 的表达显著升高(P<0.01)。这种升高的表达可能表明该 miRNA 参与了着床期间母体-胚胎的相互作用。miR-195-5p 靶基因的 KEGG 途径富集和基因本体论分析表明,这些靶基因主要参与 PI3-Akt、MAPK、细胞周期、泛素介导的蛋白水解和 mTOR 信号通路,与细胞增殖的调节有关。用 miR-195-5p 模拟物转染体外培养的细胞,显著抑制(P<0.05)其靶基因如 YWHAQ、CDC27、AKT-3、FGF-7、MAPK8、SGK1、VEGFA、CACAND1、CUL2、MKNK1 和 CACAN2D1 的表达。此外,miR-195-5p 靶基因的下调与凋亡率的显著增加和增殖的减少呈正相关。总之,本研究结果提供了在着床窗口期间母体内存在 EV miR-195-5p 的重要信息,表明其通过促进细胞死亡在调节水牛子宫内膜上皮细胞中具有重要作用。总之,miR-195-5p 的微环境可能作为一种新的潜在分子因子,有助于在水牛怀孕早期建立过程中促进早期胚胎的着床。因此,miR-195-5p 可以被鉴定为与人工授精后 19 天左右水牛怀孕建立相关的独特循环 EV 生物标志物。